Stable isotope tracers have become invaluable tools with which to investigate human metabolism. This laboratory has been involved in the application and development of stable isotope tracer methods for 20 years. New kinetic models and analytical approaches have been developed in this lab to investigate aspects of glucose, fat and protein metabolism. A major goal of this core laboratory is to make available mass spectrometry analysis for all Pepper OAlC projects. More generally, we will assist investigators in all aspects of tracer methodology necessary to use this approach to study metabolism in elderly individuals. We have all the equipment necessary to perform stable isotope enrichment measurements, including six quadrupole gas chromatograph mass spectrometers (GCMS), a gas chromatography-combustion-isotope ratio mass spectrometer (GC/C/I RMS), an isotope ratio mass spectrometer (IRMS) interfaced to an elemental analyzer, and a liquid chromatograph/quadrupole mass spectrometer (LCQMS). We also have expertise in experimental design, performance and analysis of tracer studies, and in mathematical modeling. We initially propose three novel developmental projects that will enhance our future investigations of amino acid and fatty acid kinetics. This core will also provide analysis needed to quantify tissue lipid content using magnetic resonance spectroscopy, and in vivo tissue ATP production using nuclear magnetic resonance. We will also provide the equipment to measure tissue blood perfusion using the microbubble technique, and also to measure the in vitro mitochondrial oxidative capacity of muscle samples from human subjects. Body composition determination by DEXA is also available. Finally, we are actively involved in training and education. Every year we offer an intensive, one-week formal course on tracer methodology to interested investigators. We also have a PhD program on human metabolism/nutrition, and an active research fellow program that includes one formal meeting per week, in addition to formal training.

Agency
National Institute of Health (NIH)
Institute
National Institute on Aging (NIA)
Type
Center Core Grants (P30)
Project #
5P30AG024832-03
Application #
7431645
Study Section
Special Emphasis Panel (ZAG1)
Project Start
Project End
Budget Start
2007-05-01
Budget End
2008-04-30
Support Year
3
Fiscal Year
2007
Total Cost
$307,493
Indirect Cost
Name
University of Texas Medical Br Galveston
Department
Type
DUNS #
800771149
City
Galveston
State
TX
Country
United States
Zip Code
77555
Salinas, Jennifer J; Gonzalez, Jennifer M Reingle; Al Snih, Soham (2018) Type 2 diabetes, depressive symptoms and disability over a 15-year follow-up period in older Mexican Americans living in the southwestern United States. J Diabetes Complications 32:75-82
Hong, Ickpyo; Karmarkar, Amol; Chan, Winston et al. (2018) Discharge Patterns for Ischemic and Hemorrhagic Stroke Patients Going From Acute Care Hospitals to Inpatient and Skilled Nursing Rehabilitation. Am J Phys Med Rehabil 97:636-645
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Asghar, Rabia; Chondronikola, Maria; Dillon, Edgar L et al. (2018) Quantification of muscle triglyceride synthesis rate requires an adjustment for total triglyceride content. J Lipid Res 59:2018-2024
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Moro, Tatiana; Brightwell, Camille R; Deer, Rachel R et al. (2018) Muscle Protein Anabolic Resistance to Essential Amino Acids Does Not Occur in Healthy Older Adults Before or After Resistance Exercise Training. J Nutr 148:900-909
Ryan, Joanne; Woods, Robyn L; Britt, Carlene et al. (2018) Normative performance of healthy older individuals on the Modified Mini-Mental State (3MS) examination according to ethno-racial group, gender, age, and education level. Clin Neuropsychol :1-19
Volpi, Elena (2018) Is leucine content in dietary protein the key to muscle preservation in older women? Am J Clin Nutr 107:143-144

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